Resonant Engines: A Stationary Light Background Model for Stellar and Planetary Nucleosynthesis
收藏资源简介:
Abstract This paper proposes a paradigm shift in astrophysics, moving away from standard gravitational accretion models toward a "stationary light background" framework. In this hypothesis, stellar and planetary bodies function as resonant engines that interface with a high-energy, stationary vacuum medium to manifest mass and generate elemental profiles in situ. We introduce a Material-Geometry-Resonance triad—where elemental composition, crystalline lattice structures, and harmonic operational frequencies dictate growth rates—to explain phenomena such as "solar twins" as harmonic duplicates rather than historical siblings. Furthermore, the model characterizes planetary magnetic fields and axial tilts as structural outputs of internal nucleosynthesis, with mass-asymmetry-driven precession acting as a "spark gap" safety mechanism to prevent thermal runaway. Using Mars and Earth as case studies, this framework provides a novel explanation for geophysical evolution, including the abrupt loss of planetary hydrologic capacity and the formation of localized crustal magnetic remnants, all within the constraints of discrete geometric invariants and periodic boundary breaks.



